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利用嗜热脂肪硫酸盐古菌中的耐热内酯酶进行生物技术应用。

Harnessing hyperthermostable lactonase from Sulfolobus solfataricus for biotechnological applications.

机构信息

Aix Marseille Univ, INSERM, CNRS, IRD, URMITE, Marseille, France.

Gene&GreenTK, Faculté de Médecine, 27 boulevard Jean Moulin, 13385 Marseille Cedex 5, France.

出版信息

Sci Rep. 2016 Nov 23;6:37780. doi: 10.1038/srep37780.

Abstract

Extremozymes have gained considerable interest as they could meet industrial requirements. Among these, SsoPox is a hyperthermostable enzyme isolated from the archaeon Sulfolobus solfataricus. This enzyme is a lactonase catalyzing the hydrolysis of acyl-homoserine lactones; these molecules are involved in Gram-negative bacterial communication referred to as quorum sensing. SsoPox exhibits promiscuous phosphotriesterase activity for the degradation of organophosphorous chemicals including insecticides and chemical warfare agents. Owing to its bi-functional catalytic abilities as well as its intrinsic stability, SsoPox is appealing for many applications, having potential uses in the agriculture, defense, food and health industries. Here we investigate the biotechnological properties of the mutant SsoPox-W263I, a variant with increased lactonase and phosphotriesterase activities. We tested enzyme resistance against diverse process-like and operating conditions such as heat resistance, contact with organic solvents, sterilization, storage and immobilization. Bacterial secreted materials from both Gram-negative and positive bacteria were harmless on SsoPox-W263I activity and could reactivate heat-inactivated enzyme. SsoPox showed resistance to harsh conditions demonstrating that it is an extremely attractive enzyme for many applications. Finally, the potential of SsoPox-W263I to be active at subzero temperature is highlighted and discussed in regards to the common idea that hyperthermophile enzymes are nearly inactive at low temperatures.

摘要

极端酶因其能够满足工业需求而引起了相当大的关注。其中,SsoPox 是一种从古菌 Sulfolobus solfataricus 中分离出来的超耐热酶。该酶是一种内酯酶,可催化酰基高丝氨酸内酯的水解;这些分子参与革兰氏阴性细菌的通讯,称为群体感应。SsoPox 表现出对有机磷化学物质(包括杀虫剂和化学战剂)的广谱磷酸三酯酶活性。由于其双功能催化能力及其固有稳定性,SsoPox 非常适合许多应用,在农业、国防、食品和卫生行业具有潜在用途。在这里,我们研究了突变体 SsoPox-W263I 的生物技术特性,这是一种内酯酶和磷酸三酯酶活性增加的变体。我们测试了酶对各种工艺和操作条件的抗性,如耐热性、与有机溶剂接触、灭菌、储存和固定化。来自革兰氏阴性和阳性细菌的细菌分泌物质对 SsoPox-W263I 的活性没有危害,并能使热失活的酶重新激活。SsoPox 对恶劣条件具有抗性,表明它是许多应用的极具吸引力的酶。最后,强调并讨论了 SsoPox-W263I 在亚零温度下具有活性的潜力,这与高温嗜热酶在低温下几乎不活跃的常见观点有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6717/5120315/6a1a5641f158/srep37780-f1.jpg

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